首页> 外文期刊>The Journal of trauma >Biomechanical evaluation of the less invasive stabilization system and the 95-degree angled blade plate for the internal fixation of distal femur Fractures in human cadaveric bones with high bone mineral density.
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Biomechanical evaluation of the less invasive stabilization system and the 95-degree angled blade plate for the internal fixation of distal femur Fractures in human cadaveric bones with high bone mineral density.

机译:侵入性较小的稳定系统和95度成角度的刀片板对股骨远端骨折内固定的高骨矿物质密度人骨的生物力学评估。

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BACKGROUND: The less invasive stabilization system (LISS) is an internal fixator that utilizes unicortical locked screws for fixation of distal femur fractures. A question is whether locked unicortical screw fixation is sufficient, when compared with a standard implant such as a blade plate. METHODS: Eight matched pairs of fresh-frozen cadaveric femora were instrumented with either the LISS or a 95-degree blade plate. A 4-cm supracondylar gap fracture model was created and all bone-implant constructs were tested to failure in axial loading. RESULTS: All constructs failed by plastic deformation of the implant. There was no significant difference between the LISS and the blade plate constructs with respect to load to failure. CONCLUSIONS: Despite unicortical fixation axial loading to failure of the LISS did not result in implant/screw pull-out neither proximally nor distally. However, there does not appear to be a biomechanical advantage of using the LISS as opposed to a blade plate in bones with high bone mineral density.
机译:背景:微创稳定系统(LISS)是一种内部固定器,利用单皮质锁定螺钉固定股骨远端骨折。一个问题是,与标准植入物(如刀片板)相比,锁定的单皮质螺钉固定是否足够。方法:使用LISS或95度刀片板对八对匹配的新鲜冷冻尸体股骨进行检测。创建了一个4 cm的con上间隙裂隙模型,并测试了所有骨植入物构造的轴向载荷。结果:所有结构均由于植入物的塑性变形而失败。 LISS和叶片板结构之间的破坏载荷没有显着差异。结论:尽管单皮质固定,LISS失败的轴向载荷并没有导致近端或远端的植入物/螺钉拔出。但是,与具有高骨矿物质密度的骨骼中的刀片板相比,使用LISS似乎没有生物力学优势。

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